Title :
Spatiotemporal Model Reduction of Inverter-Based Islanded Microgrids
Author :
Ling Luo ; Dhople, Sairaj V.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Minnesota, Minneapolis, MN, USA
Abstract :
Computationally efficient and scalable models that describe droop-controlled inverter dynamics are key to modeling, analysis, and control in islanded microgrids. Typical models developed from first principles in this domain describe detailed dynamics of the power electronics inverters, as well as the network interactions. Consequently, these models are very involved; they offer limited analytical insights and are computationally expensive when applied to investigate the dynamics of large microgrids with many inverters. This calls for the development of reduced-order models that capture the relevant dynamics of higher order models with a lower dimensional state space while not compromising modeling fidelity. To this end, this paper proposes model-reduction methods based on singular perturbation and Kron reduction to reduce large-signal dynamic models of inverter-based islanded microgrids in temporal and spatial aspects, respectively. The reduced-order models are tested in a modified IEEE 37-bus system and verified to accurately describe the original dynamics with lower computational burden. In addition, we demonstrate that Kron reduction isolates the mutual inverter interactions and the equivalent loads that the inverters have to support in the microgrid - this aspect is leveraged in the systematic selection of droop coefficients to minimize power losses and voltage deviations.
Keywords :
IEEE standards; distributed power generation; invertors; power distribution faults; power distribution reliability; power electronics; power generation control; singularly perturbed systems; spatiotemporal phenomena; Kron reduction; droop coefficient systematic selection; droop-controlled power electronics inverter dynamics; equivalent load isolation; inverter-based islanded microgrid spatiotemporal model reduction; islanded microgrid control; modified IEEE 37-bus system; mutual inverter network interaction; power loss minimization; reduced-order model; singular perturbation; voltage deviation minimization; Computational modeling; Inverters; Load modeling; Mathematical model; Microgrids; Power system dynamics; Reduced order systems; Droop control; Kron reduction; islanded microgrid; model reduction; singular perturbation;
Journal_Title :
Energy Conversion, IEEE Transactions on
DOI :
10.1109/TEC.2014.2348716